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基于噬菌体T4粘附素构建三聚体纤维蛋白。

Engineering trimeric fibrous proteins based on bacteriophage T4 adhesins.

作者信息

Miroshnikov K A, Marusich E I, Cerritelli M E, Cheng N, Hyde C C, Steven A C, Mesyanzhinov V V

机构信息

Howard Hughes Medical Institute, Bach Institute of Biochemistry, Moscow, Russia.

出版信息

Protein Eng. 1998 Apr;11(4):329-32. doi: 10.1093/protein/11.4.329.

Abstract

The adsorption specificity of bacteriophage T4 is determined by genes 12 and 37, encoding the short tail-fibers (STF) and the distal part of the long tail-fibers (LTF), respectively. Both are trimeric proteins with rod domains made up of similar tandem quasi-repeats, approximately 40 amino acids long. Their assembly requires the viral chaperones gp57A and gp38. Here we report that fusing fragments of gp12 and gp37 to another trimeric T4 fibrous protein, fibritin, facilitates correct assembly, thereby by-passing the chaperone requirement. Fibritin is an alpha-helical coiled coil protein whose C-terminal part (fibritin E, comprising the last 120 residues) has recently been solved to atomic resolution. Gp12 fragments of 109 and 70 amino acids, corresponding to three and two quasi-repeats respectively, were fused to the C-terminus of fibritin E. A similar chimera was designed for the last 63 residues of gp37, which contain four copies of the pentapeptide Gly-X-His-X-His and assume a narrow rigid structure in the LTF distal tip. Expressed from plasmids, all three chimeras form soluble trimers that are resistant to dissociation by SDS and digestion by trypsin, indicative of correct folding and oligomerization.

摘要

噬菌体T4的吸附特异性由基因12和37决定,这两个基因分别编码短尾丝(STF)和长尾丝(LTF)的远端部分。两者都是三聚体蛋白,其杆状结构域由相似的串联准重复序列组成,长度约为40个氨基酸。它们的组装需要病毒伴侣蛋白gp57A和gp38。在此我们报告,将gp12和gp37的片段与另一种三聚体T4纤维蛋白纤维连接蛋白融合,有助于正确组装,从而绕过对伴侣蛋白的需求。纤维连接蛋白是一种α-螺旋卷曲螺旋蛋白,其C端部分(纤维连接蛋白E,包含最后120个残基)最近已解析到原子分辨率。分别对应三个和两个准重复序列的109和70个氨基酸的gp12片段与纤维连接蛋白E的C端融合。为gp37的最后63个残基设计了类似的嵌合体,其中包含五肽Gly-X-His-X-His的四个拷贝,并在LTF远端形成狭窄的刚性结构。从质粒表达后,所有三种嵌合体均形成可溶三聚体,对SDS解离和胰蛋白酶消化具有抗性,表明折叠和寡聚化正确。

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